US7916210B2

Driving device and image stabilizing system

Summary by NHIP

Shape Memory Alloy Driving Device

The device drives a moving part using a shape memory alloy wire with a diameter between 10 μm and 80 μm. A second expandable member biases the first wire to generate tensile force, enabling bidirectional motion through voltage application and reduction.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

An art of a driving device for appropriately improving a response of an SMA actuator will be provided. A portable telephone 1 has an image stabilization system 10 for driving an image pickup unit 9 by a pair of driving members 15a and 15b functioning as actuators, thereby performing image stabilization. Driving members 15a and 15b are formed as a wire of shape memory alloy (SMA) and when a voltage is applied to both ends and a current is supplied, driving force is generated in the contraction direction. With respect to the wire diameter of the SMAs, the wire diameter of the SMAs is set between 10 μm and 80 μm, thus the mountability and response are improved appropriately.

US7916210B2, drawing sheet 1
Sheet 1 of 19

Term

Projected expiry 27 April 2029.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Projected expiry

16 claims: 4 independent, 12 dependent

  1. 1
    Broadest claimClaim Score 46, average(NHIP)A driving device for driving a moving part, comprising:a body member;a first member which is made of a shape memory alloy wire having a diameter of no less than 10 μm and no more than 80 μm, is expandable and contractable, and is extended between the body member and the moving part;a second member which is expandable and contractable and is arranged between the body member and the moving part such that the second member biases the first member so as to generate a tensile force in the first member and expand the first member;a measurement section which obtains a measurement value related to driving of the moving part having been driven by the first member and the second member;and a control section which controls the driving of the moving part by supplying a voltage to the first member on the basis of a deviation of the measurement value from a driving target value related to the driving of the moving part;wherein, when a voltage is supplied to the first member, the first member contracts itself and moves the moving part in a first direction, and when the voltage supplied to the first member is reduced, the first member is expanded by the tensile force applied by second member so as to move the moving part in a second direction different from the first direction.
  2. 8
    A driving device for driving a moving part, comprising:a body member;a first member which is made of a shape memory alloy wire having a cross-sectional area of no less than 80 μm 2 and no more than 5030 μm 2 , is expandable and contractable, and is extended between the body member and the moving part;a second member which is expandable and contractable and is arranged between the body member and the moving part such that the second member biases the first member so as to generate a tensile force in the first member and expand the first member;a measurement section which obtains a measurement value related to driving of the moving part having been driven by the first member and the second member;and a control section which controls the driving of the moving part by supplying a voltage to the first member on the basis of a deviation of the measurement value from a driving target value related to the driving of the moving part;wherein, when a voltage is supplied to the first member, the first member contracts itself and moves the moving part in a first direction, and when the voltage supplied to the first member is reduced, the first member is expanded by the tensile force applied by the second member so as to move the moving part in a second direction different from the first direction.
  3. 15
    An image stabilizing system comprising:a driving device for driving a moving part comprising: a body member;a first member which is made of a shape memory alloy wire having a diameter of no less than 10 μm and no more than 80 μm, is expandable and contractable, and is extended between the body member and the moving part;a second member which is expandable and contractable and is arranged between the body member and the moving part such that the second member biases the first member so as to generate a tensile force in the first member and expand the first member;a measurement section which obtains a measurement value related to the driving of the moving part having been driven by the first member and the second member;and a control section which controls the driving of the moving part by supplying a voltage to the first member on the basis of a deviation of the measurement value from a driving target value related to the driving of the moving part, wherein, when a voltage is supplied to the first member, the first member contracts itself and moves the moving part in a first direction, and when the voltage supplied to the first member is reduced, the first member is expanded by the tensile force applied by the second member so as to move the moving part in a second direction different from the first direction;an imaging section which includes the moving part and images a photographic subject;and a correction section which corrects image shaking related to the imaging section by driving the moving part by controlling the driving device.
  4. 16
    An image stabilizing system comprising:a driving device for driving a moving part comprising: a body member;a first member which is made of a shape memory alloy wire having a cross-sectional area of no less than 80 μm 2 and no more than 5030 μm 2 , is expandable and contractable, and is extended between the body member and the moving part;a second member which is expandable and contractable and is arranged between the body member and the moving part such that the second member biases the first member so as to generate a tensile force in the first member and expand the first member;a measurement section which obtains a measurement value related to the driving of the moving part having been driven by the first member and the second member;and a control section which controls the driving of the moving part by supplying a voltage to the first member on the basis of a deviation of the measurement value from a driving target value related to the driving of the moving part, wherein, when a voltage is supplied to the first member, the first member contracts itself and moves the moving part in a first direction, and when the voltage supplied to the first member is reduced, the first member is expanded by the tensile force applied by the second member so as to move the moving part in a second direction different from the first direction;an imaging section which includes the moving part and images a photographic subject;and a correction section which corrects image shaking related to the imaging section by driving the moving part by controlling the driving device.